Area of research
Atomic and Molecular Physics, and Optics · Electrical and Electronic Engineering
Research interest
Research interests include Optics, Materials science, Interferometry, Cladding (metalworking), Computer science, and Refractive index.
Q-BIC THz Metasurface Biosensor Based on Flexible Polyimide for Solution Detection
Ultrafast All‐Optical Terahertz Switchable Modulation Using Van Der Waals Fe <sub>4</sub> GeTe <sub>2</sub> /Bi <sub>2</sub> Te <sub>3</sub> Heterostructures
A Cluster-Based Statistical Channel Model for Integrated Sensing and Communication Channels
Confinement loss prediction in diverse anti-resonant fibers through neural networks
A Novel Geometry-Based Stochastic Channel Model in Integrated Sensing and Communication Scenarios
Quantitative analysis of debonding gaps in concrete-filled steel tubes on the Qinghai-Tibet Plateau under severely harsh conditions
Enhanced sensitivity of magnetic field sensing using L-shaped dual Terfenol-D-FBGs based on the Vernier effect and a dual-loop optoelectronic oscillator
Measurement and Characterization of Vehicle-to-Vehicle Channels in Vegetated Environment
Wavelength-Independent Low-DMG EDFA for C-Band Inline WDM-MDM Signal Amplification
Coherence analysis of noise-like pulses generated by an erbium-doped fiber mode-locked laser
Comparative experimental study of different fetch distances, interpolation algorithms, source substrate noise, sampling point counts, and resolution for NF of BDFA
Modeling optimization design and amplification characteristics of O-band irregular Bragg bismuth-doped fiber amplifier
Terahertz Metasurface Multidimensional Biosensor Based on Quasi-Bound States in the Continuum for Trace Analyte Detection
Dynamic V2V Channel Measurement and Modeling at Street Intersection Scenarios
A 3D Geometry-Based Reconfigurable Intelligent Surfaces-Assisted mmWave Channel Model for High-Speed Train Communications
The Optical Fiber Refractive Index Profile Measurement Based on Phase-Correct Quantitative Phase Microscopy
Sensitivity Enhanced Magnetic Field Sensor Based on Hollow Core Fiber Fabry-Perot Interferometer and Vernier Effect
Harmonic Dissipative Soliton Resonance in an Er/Yb Co-Doped Fiber Laser Based On SESAM
Gain Characteristics of Few-Mode EDFA With Different Pump
A Multi-Layer Erbium-Doped Air-Hole-Assisted Few-Mode Fiber with Ultra-Low Differential Modal Gain
Complex Refractive Index Profile Measurement for Special Fibers Using Total Variation Method
High-Precision Mode Decomposition for Few-Mode Fibers Based on Multi-Task Deep Learning
Machine-Learning-Based Fast Angle-of-Arrival Recognition for Vehicular Communications
Non-Stationary Vehicular Channel Characterization in Complicated Scenarios
Deep subwavelength graphene-dielectric hybrid plasmonic waveguide for compact photonic integration
Resonant-ring assisted large mode area segmented cladding fiber with high-index rings in core
Measurement of Instantaneous Microwave Frequency by Optical Power Monitoring Based on Polarization Interference
Switchable, Widely Tunable and Interval-Adjustable Multi-Wavelength Erbium-Doped Fiber Laser Based on Cascaded Filters
Low-DMD and low-crosstalk few-mode multi-core fiber with air-trench/holes assisted graded-index profile
Generation of an optical triangular-shaped pulse train with variable symmetry by using an I/Q modulator